Recent progress in constructing halogenated interfaces for highly stable lithium metal anodes

被引:56
作者
Wang, Yaoda [1 ]
Liang, Junchuan [1 ]
Song, Xinmei [1 ]
Jin, Zhong [1 ]
机构
[1] Nanjing Univ, MOE Key Lab High Performance Polymer Mat & Techno, MOE Key Lab Mesoscop Chem, Sch Chem & Chem Engn,Jiangsu Key Lab Adv Organ Ma, Nanjing 210023, Peoples R China
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
Lithium metal anodes; Halogenated interfaces; High safety; High operating voltage; All-temperature working; SOLID-ELECTROLYTE INTERPHASE; DENDRITE-FREE; IN-SITU; RECHARGEABLE BATTERIES; ENHANCED PERFORMANCE; LIQUID ELECTROLYTES; LIF LAYER; FLUORIDE; ELECTRODEPOSITION; SURFACE;
D O I
10.1016/j.ensm.2022.10.054
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Lithium metal batteries (LMBs) are considered one of the most promising next-generation energy storage devices due to their great potential for enhancing energy density. However, the uncontrolled lithium (Li) dendrite growth and the inevitable formation of a native solid electrolyte interface (SEI) severely deteriorate the electrochemical performances and exacerbate the safety risks of LMBs, dragging LMBs out of practical applications. Improving the interface properties of Li metal anodes (LMAs) through the construction of halogenated interfaces is expected to overcome the above-described challenges because of the prominent advantages of halogenated interfaces in passivating active Li surfaces, regulating the diffusion and migration of Li ions, and improving interface mechanical stability. In this review, the effects of various halogenated interfaces on the stability and electrochemical properties of LMAs are discussed in detail. The emerging strategies for constructing advanced halogenated interfaces and their protection mechanisms are comprehensively summarized. Moreover, the representative advanced characterization techniques for the anode/electrolyte interfaces are also reviewed. The remaining challenges and potential opportunities for the future development and rational design of halogenated interfaces are highlighted, with the aim of indicating future research directions related to the significant strategy of constructing halogenated interfaces to achieve highly stable LMBs.
引用
收藏
页码:732 / 775
页数:44
相关论文
共 204 条
[1]   Stabilizing Li Plating by a Fluorinated Hybrid Protective Layer [J].
Ai, Liufeng ;
Chen, Ziyang ;
Li, Shaopeng ;
Xu, Tiezhu ;
Zhang, Jinhui ;
Shen, Laifa ;
Zhang, Xiaogang .
ACS APPLIED ENERGY MATERIALS, 2021, 4 (12) :14407-14414
[2]  
Assegie AA, 2018, NANOSCALE, V10, P6125, DOI [10.1039/C7NR09058G, 10.1039/c7nr09058g]
[3]   Transition of lithium growth mechanisms in liquid electrolytes [J].
Bai, Peng ;
Li, Ju ;
Brushett, Fikile R. ;
Bazant, Martin Z. .
ENERGY & ENVIRONMENTAL SCIENCE, 2016, 9 (10) :3221-3229
[4]   Interfaces and Interphases in All-Solid-State Batteries with Inorganic Solid Electrolytes [J].
Banerjee, Abhik ;
Wang, Xuefeng ;
Fang, Chengcheng ;
Wu, Erik A. ;
Meng, Ying Shirley .
CHEMICAL REVIEWS, 2020, 120 (14) :6878-6933
[5]  
Bhattacharyya R, 2010, NAT MATER, V9, P504, DOI [10.1038/nmat2764, 10.1038/NMAT2764]
[6]   The early-stage growth and reversibility of Li electrodeposition in Br-rich electrolytes [J].
Biswal, Prayag ;
Kludze, Atsu ;
Rodrigues, Joshua ;
Deng, Yue ;
Moon, Taylor ;
Stalin, Sanjuna ;
Zhao, Qing ;
Yin, Jiefu ;
Kourkoutis, Lena F. ;
Archer, Lynden A. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2021, 118 (02)
[7]   Mechanochemical synthesis of Li-argyrodite Li6PS5X (X = Cl, Br, I) as sulfur-based solid electrolytes for all solid state batteries application [J].
Boulineau, Sylvain ;
Courty, Matthieu ;
Tarascon, Jean-Marie ;
Viallet, Virginie .
SOLID STATE IONICS, 2012, 221 :1-5
[8]   Lithium Cyano Tris(2,2,2-trifluoroethyl) Borate as a Multifunctional Electrolyte Additive for High-Performance Lithium Metal Batteries [J].
Chae, Oh B. ;
Adiraju, Venkata A. K. ;
Lucht, Brett L. .
ACS ENERGY LETTERS, 2021, 6 (11) :3851-3857
[9]   Co-guiding the dendrite-free plating of lithium on lithiophilic ZnO and fluoride modified 3D porous copper for stable Li metal anode [J].
Chang, Xinshuang ;
Liu, Hang ;
Yang, Hang ;
Di, Jie ;
Tang, Wenhao ;
Fu, Huadong ;
Li, Mingyang ;
Liu, Ruiping .
JOURNAL OF MATERIOMICS, 2020, 6 (01) :54-61
[10]   Uniform High Ionic Conducting Lithium Sulfide Protection Layer for Stable Lithium Metal Anode [J].
Chen, Hao ;
Pei, Allen ;
Lin, Dingchang ;
Xie, Jin ;
Yang, Ankun ;
Xu, Jinwei ;
Lin, Kaixiang ;
Wang, Jiangyan ;
Wang, Hansen ;
Shi, Feifei ;
Boyle, David ;
Cui, Yi .
ADVANCED ENERGY MATERIALS, 2019, 9 (22)